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Appraising the Performance of Cyclic Production Scheme through Reservoir Simulation, a Case Study

机译:通过水库模拟来评估循环生产方案的性能,案例研究

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Oil wells in mature fields with strong aquifer influx and the first row of producers near peripheral water injectors experience very high water cuts (above 80%), which cause lower oil production and increasing disposal costs. To mitigate this situation, various production strategies have been implemented in this simulation study to reduce water production, optimize oil production and revive dead wells. One strategy is to implement a cyclic production scheme (CPS). The CPS requires alternate shutting and flowing of wells with high water cuts over predetermined time cycles. The main objectives of the cyclic strategy is to reduce water production by optimizing oil production, minimizing coning effect and having a better control of the uniform waterflood front to the up-dip producers. This strategy enhances the sweep efficiency, improving pressure maintenance and minimizing water production. This simulation study assesses the effectiveness and the performance of CPS implemented in a reservoir simulation model of a mature oil field. Simulation runs with several scenarios were conducted to understand and optimize the impact of CPS. The simulation results provided the best cyclic production/shut-in period and showed significant advantages of applying CPS over the regular noncyclic production in all scenarios. In this study, more than 93 wells have been evaluated and most of these wells showed good overall oil recovery after applying the CPS strategy.
机译:具有强大含水层流入的成熟领域的油井和周边水注射器附近的第一排生产商体验非常高的水切口(高于80%),导致油生产较低,提高处置成本。为了缓解这种情况,在这个模拟研究中已经实施了各种生产策略,以减少水产,优化石油生产和复兴死亡井。一种策略是实施循环生产计划(CPS)。 CPS需要在预定时间循环上用高水平切割井的交替的井口和流动。循环策略的主要目标是通过优化石油生产,最大限度地减少水产量,并更好地控制浸入浸渍生产商的均匀水泡。该策略提高了扫描效率,改善了压力维护和最小化水资源。该仿真研究评估了成熟油田储层模拟模型中CPS实施的有效性和性能。进行了多种情况的模拟运行,以了解和优化CP的影响。仿真结果提供了最佳的循环生产/关闭期,并在所有情况下施用CPS在常规非环生产中施加了显着的优势。在这项研究中,已经评估了超过93个孔,并且在施用CPS策略后,这些井中的大部分井都显示出良好的整体溢油。

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